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基于电化学驱动二氧化钛超表面的动态颜色调谐

Dynamic Color Tuning with Electrochemically Actuated TiO Metasurfaces.

作者信息

Eaves-Rathert Janna, Kovalik Elena, Ugwu Chibuzor Fabian, Rogers Bridget R, Pint Cary L, Valentine Jason G

机构信息

Department of Mechanical Engineering, Vanderbilt University, Nashville, Tennessee 37235, United States.

Interdisciplinary Materials Science Program, Vanderbilt University, Nashville, Tennessee 37235, United States.

出版信息

Nano Lett. 2022 Feb 23;22(4):1626-1632. doi: 10.1021/acs.nanolett.1c04613. Epub 2022 Feb 9.

Abstract

Dynamic tuning of metamaterials is a critical step toward advanced functionality and improved bandwidth. In the visible spectrum, full spectral color tuning is inhibited by the large absorption that accompanies index changes, particularly at blue wavelengths. Here, we show that the electrochemical lithiation of anatase TiO to LiTiO (LTO) results in an index change of 0.65 at 649 nm with absorption coefficient less than 0.1 at blue wavelengths, making this material well-suited for dynamic visible color tuning. Dynamic tunability of TiO is leveraged in a Fabry-Perot cavity and a gap plasmon metasurface. In the Fabry-Perot configuration, the device exhibits a shift in reflectance of over 100 nm when subjected to only 2 V bias while the gap plasmon metasurface achieves enhanced switching speed. The dynamic range, speed, and cyclability indicate that the TiO/LTO system is competitive with established actuators like WO, with the additional advantage of reduced absorption at high frequencies.

摘要

超材料的动态调谐是迈向先进功能和改善带宽的关键一步。在可见光谱中,全光谱颜色调谐受到伴随折射率变化的大量吸收的抑制,特别是在蓝色波长处。在这里,我们表明锐钛矿TiO电化学锂化为LiTiO(LTO)会在649nm处导致0.65的折射率变化,在蓝色波长处吸收系数小于0.1,这使得这种材料非常适合动态可见颜色调谐。TiO的动态可调性在法布里-珀罗腔和间隙表面等离激元超表面中得到利用。在法布里-珀罗配置中,该器件仅施加2V偏压时就会出现超过100nm的反射率偏移,而间隙表面等离激元超表面则实现了更高的开关速度。动态范围、速度和循环性表明,TiO/LTO系统与像WO这样的成熟致动器具有竞争力,并且在高频下具有降低吸收的额外优势。

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